Suppr超能文献

拓展微生物烷烃生物合成途径的产物谱。

Expanding the product profile of a microbial alkane biosynthetic pathway.

作者信息

Harger Matthew, Zheng Lei, Moon Austin, Ager Casey, An Ju Hye, Choe Chris, Lai Yi-Ling, Mo Benjamin, Zong David, Smith Matthew D, Egbert Robert G, Mills Jeremy H, Baker David, Pultz Ingrid Swanson, Siegel Justin B

机构信息

Department of Biochemistry, University of Washington, Seattle, WA 98195, USA.

出版信息

ACS Synth Biol. 2013 Jan 18;2(1):59-62. doi: 10.1021/sb300061x. Epub 2012 Sep 26.

Abstract

Microbially produced alkanes are a new class of biofuels that closely match the chemical composition of petroleum-based fuels. Alkanes can be generated from the fatty acid biosynthetic pathway by the reduction of acyl-ACPs followed by decarbonylation of the resulting aldehydes. A current limitation of this pathway is the restricted product profile, which consists of n-alkanes of 13, 15, and 17 carbons in length. To expand the product profile, we incorporated a new part, FabH2 from Bacillus subtilis , an enzyme known to have a broader specificity profile for fatty acid initiation than the native FabH of Escherichia coli . When provided with the appropriate substrate, the addition of FabH2 resulted in an altered alkane product profile in which significant levels of n-alkanes of 14 and 16 carbons in length are produced. The production of even chain length alkanes represents initial steps toward the expansion of this recently discovered microbial alkane production pathway to synthesize complex fuels. This work was conceived and performed as part of the 2011 University of Washington international Genetically Engineered Machines (iGEM) project.

摘要

微生物产生的烷烃是一类新型生物燃料,其化学组成与石油基燃料非常匹配。烷烃可通过脂肪酸生物合成途径,先还原酰基-酰基载体蛋白(acyl-ACPs),再将生成的醛进行脱羰反应来生成。该途径目前的一个限制是产物谱有限,其产物仅包括碳链长度为13、15和17的正构烷烃。为了扩大产物谱,我们引入了一个新元件,来自枯草芽孢杆菌的FabH2,该酶已知对脂肪酸起始具有比大肠杆菌天然FabH更广泛的特异性谱。当提供合适的底物时,添加FabH2会导致烷烃产物谱发生改变,其中会产生大量碳链长度为14和16的正构烷烃。偶数碳链长度烷烃的产生代表了将这一最近发现的微生物烷烃生产途径扩展以合成复杂燃料的初步步骤。这项工作是作为2011年华盛顿大学国际遗传工程机器大赛(iGEM)项目的一部分构思并开展的。

相似文献

2
Utilizing Alcohol for Alkane Biosynthesis by Introducing a Fatty Alcohol Dehydrogenase.利用引入的脂肪醇脱氢酶生产烷烃的酒精。
Appl Environ Microbiol. 2022 Dec 13;88(23):e0126422. doi: 10.1128/aem.01264-22. Epub 2022 Nov 23.
3
Microbial biosynthesis of alkanes.微生物烷烃的生物合成。
Science. 2010 Jul 30;329(5991):559-62. doi: 10.1126/science.1187936.
4
Improving alkane synthesis in Escherichia coli via metabolic engineering.通过代谢工程改进大肠杆菌中的烷烃合成。
Appl Microbiol Biotechnol. 2016 Jan;100(2):757-67. doi: 10.1007/s00253-015-7026-y. Epub 2015 Oct 17.
7
Microbial production of short-chain alkanes.微生物生产短链烷烃。
Nature. 2013 Oct 24;502(7472):571-4. doi: 10.1038/nature12536. Epub 2013 Sep 29.
10
Cloning of a novel gene involved in alkane biosynthesis from Klebsiella sp.从克雷伯氏菌属中克隆参与烷烃生物合成的新基因
Appl Microbiol Biotechnol. 2019 Jul;103(14):5917-5923. doi: 10.1007/s00253-019-09900-1. Epub 2019 May 20.

引用本文的文献

3
Microbial engineering to produce fatty alcohols and alkanes.微生物工程生产脂肪醇和烷烃。
J Ind Microbiol Biotechnol. 2021 Apr 30;48(1-2). doi: 10.1093/jimb/kuab011.
4
A thermodynamic atlas of carbon redox chemical space.碳氧化还原化学空间的热力学图集。
Proc Natl Acad Sci U S A. 2020 Dec 29;117(52):32910-32918. doi: 10.1073/pnas.2005642117. Epub 2020 Dec 21.

本文引用的文献

2
Microbial biosynthesis of alkanes.微生物烷烃的生物合成。
Science. 2010 Jul 30;329(5991):559-62. doi: 10.1126/science.1187936.

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验